| ▶ 금속 및 관련제품 |
| KS D 0210:1992 |
강의 매크로 조직 시험 방법 |
×3.3 ~ ×50 |
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| KS D 0205:2002 |
강의 페라이트 및 오스테나이트 결정 입도 시험법(현미경 관찰법) |
결정립지수 - 페라이트 : 1 ~ 13 - 오스테나이트 : 1 ~ 8 |
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| KS D 0204:2007 |
강의 비금속 개재물 측정 방법 - 표준도표를 이용한 현미경 시험방법 |
개재물지수 : 0.5 ~ 3 개재물그룹 : A, B, C, D, DS |
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| KS D 0026:2002 |
철강 재료 및 내열 합금의 고온 인장 시험 방법 |
시험하중 : Max. 100 kN 연신율/단면수축율 : (1 ~ 80) % 시험온도 : Max. 1 000 ℃ |
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| KS B ISO 8492:1998 |
금속 재료-관-편평 시험 |
시험하중 : Max. 1 000 kN |
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| KS B ISO 4136:2012 |
금속용접부 파괴시험 - 횡방향 인장시험 |
시험하중 : Max. 1 000 kN |
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| KS B ISO 5173:2009 |
금속 재료 용접부의 파괴 시험-굽힘 시험 |
시험하중 : Max. 1 000 kN |
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| KS B 0811:2003 |
금속 재료의 비커스 경도 시험 방법 |
HV 10 |
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| KS B 0810:2003 |
금속 재료 충격 시험 방법 |
흡수에너지 : (0 ~ 400) J 시험온도 : 상온 ~ -196 ℃ 횡팽창량 : (0.01 ~ 10) mm 전단파면율 : (0 ~ 100) % |
소재지 |
| KS B 0806:2000 |
금속 재료의 로크웰 경도 시험 방법 |
Scale : B, C |
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| KS B 0805:2000 |
금속 재료의 브리넬 경도 시험 방법 |
시험하중 : (4 903 ~ 29 420) N |
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| KS B 0804:2001 |
금속 재료 굽힘 시험 |
시험하중 : Max. 1 000 kN |
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| KS B 0802:2003 |
금속 재료 인장 시험 방법 |
시험하중 : Max. 1 000 kN 연신율/단면수축율 : (1 ~ 80) % |
소재지 |
| ISO 6892-1:2019 |
Metallic materials -- Tensile testing -- Part 1 : Method of test at room temperature |
Test load : Max. 1 000 kN Elongration/Reduction of Area (1 ~ 80) % |
소재지 |
| ISO 6507-1:2023 |
Metallic materials - Vickers hardness test - Part 1:Test method |
HV 10 |
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| ISO 148-1:2016 |
Metallic materials -- Charpy pendulum impact test-Part1: Test method |
Absorbed energy : (0 ~ 400) J Temperature : Room Temp. ~ -196 ℃ Lateral Expansion : (0.01 ~ 10) mm Percent Shear fracture area : (0 ~ 100) % |
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| AWS D1.1/D1.1M:2025 |
Structural Welding Code-Steel 6.10.3 Mechanical Testing (Bend Tests, Tension Test) 6.10.4 Macroetch Test 6.23.4 Fillet Weld Break Test 6.27 CVN Tests |
6.10.3 Test load : Max. 1 000 kN 6.23.4 Test load : Max. 1 000 kN 6.27 Absorbed energy : (0 ~ 400) J Temperature : Room Temp. ~ -196 ℃ Lateral Expansion : (0.01 ~ 10) mm Percent Shear fracture area : (0 ~ 100) % |
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| ASTM E8/E8M-25 |
Standard Test Methods for Tension Testing of Metallic Materials[Metric] |
Test load : Max. 1 000 kN Elongration/Reduction of Area (1 ~ 80) % |
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| ASTM E407-23 |
Standard Practice for Microetching Metals and Alloys |
×50 ~ ×1 000 |
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| ASTM E340-23 |
Standard Practice for Macroetching Metals and Alloys |
×3.3 ~ ×50 |
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| ASTM E23-25 |
Standard Test Methods for Notched Bar Impact Testing of Metallic Materials |
Absorbed energy : (0 ~ 400) J Temperature : Room Temp. ~ -196 ℃ Lateral Expansion : (0.01 ~ 10) mm Percent Shear fracture area : (0 ~ 100) % |
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| ASTM E18-25 |
Standard Test Methods for Rockwell Hardness of Metallic Materials |
Scale : B, C |
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| ASTM E112-25 |
Standard Test Methods for Determining Average Grain Size |
Grain Size Index - Ferrite : 1 ~ 13 - Austenite : 1 ~ 8 |
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| ASTM E10-23 |
Standard Test Method for Brinell Hardness of Metallic Materials |
Test load : (4 903 ~ 29 420) N |
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| ASTM A370-24a |
Standard Test Methods and Definitions for Mechanical Testing of Steel Products - TENSION TEST - HARDNESS TEST - BEND TEST - CHARPY IMPACT TESTING - A2.5.1.1 Flattening Test |
Tensile test - Test load : Max. 1 000 kN - Elongration/Reduction of Area : (1 ~ 80) % Hardness test - Brinell(Test Load) : (4 903 ~ 29 420) N - Rockwell(Scale) : B, C Bend test - Test load : Max. 1 000 kN Charpy Impact Test - Absorbed energy : (0 ~ 400) J - Temperature : Room Temp. ~ -196 ℃ - Lateral Expansion : (0.01 ~ 10) mm - Percent Shear fracture area : (0 ~ 100) % A2.5.1.1 Flattening Test - Test load : Max. 1 000 kN |
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| ASME BPVC.Ⅸ-2025 |
QUALIFICATION STANDARD FOR WELDING, BRAZING, AND FUSING PROCEDURES; WELDERS; BRAZERS; AND WELDING, BRAZING. AND FUSING OPERATORS QW-150 TENSION TEST QW-160 GUIDED-BEND TESTS QW-170 TOUGHNESS TESTS QW-470 ETCHING-PROCESSES AND REAGENTS |
QW-150 Tensile test - Test load : Max. 1 000 kN QW-160 Bend test - Test load : Max. 1 000 kN QW-170 Charpy Impact Test - Absorbed energy : (0 ~ 400) J - Temperature : Room Temp. ~ -196 ℃ - Lateral Expansion : (0.01 ~ 10) mm - Percent Shear fracture area : (0 ~ 100) % |
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| ASME BPVC.Ⅷ.1-2025 |
RULES FOR CONSTRUCTION OF PRESSURE VESSELS UG-84 CHARPY IMPACT TESTS UW-20.4.3 SHEAR LOAD TEST |
UG-84 Charpy Impact Tests - Absorbed energy : (0 ~ 400) J - Temperature : Room Temp. ~ -196 ℃ - Lateral Expansion : (0.01 ~ 10) mm UW-20.4.3 SHEAR LOAD TEST - Test load : Max. 1 000 kN |
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| ASME BPVC.Ⅱ-A-2025 |
SA-370 TEST METHODS AND DEFINITIONS FOR MECHANICAL TESTING OF STEEL PRODUCTS - TENSION TEST - HARDNESS TEST - BEND TEST - CHARPY IMPACT TESTING - A2.5.1.1 Flattening Test |
Tensile test - Test load : Max. 1 000 kN - Elongration/Reduction of Area : (1 ~ 80) % Hardness test - Brinell(Test Load) : (4 903 ~ 29 420) N - Rockwell(Scale) : B, C Bend test - Test load : Max. 1 000 kN Charpy Impact Test - Absorbed energy : (0 ~ 400) J - Temperature : Room Temp. ~ -196 ℃ - Lateral Expansion : (0.01 ~ 10) mm - Percent Shear fracture area : (0 ~ 100) % A2.5.1.1 Flattening Test - Test load : Max. 1 000 kN |
소재지 |
| JIS Z 3122:2013 |
Methods of bend test for butt welded joint |
Test load : Max. 1 000 kN |
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| JIS Z 3121:2013 |
Method of tensile test for butt welded joints |
Test load : Max. 1 000 kN |
소재지 |
| JIS Z 2245:2021 |
Rockwell hardness test -- Test method |
Scale : B, C |
소재지 |
| JIS Z 2244-1:2024 |
Vickers hardness test -Part 1: Test method |
HV 10 |
소재지 |
| JIS Z 2243-1:2018 |
Brinell hardness test -- Part 1 : Test method |
Test load : (4 903 ~ 29 420) N |
소재지 |
| JIS Z 2242:2023 |
Method for Charpy pendulum impact test of metallic materials |
Absorbed energy : (0 ~ 400) J Temperature : Room Temp. ~ -196 ℃ Lateral Expansion : (0.01 ~ 10) mm Percent Shear fracture area : (0 ~ 100) % |
소재지 |
| JIS Z 2241:2022/AMENDMENT 1:2023 |
Metallic materials -- Tensile testing -- Method of test at room temperature |
Test load : Max. 1 000 kN Elongation/Reduction of Area(1 ∼ 80) % |
소재지 |
| ASTM E21-20 |
Standard Test Methods for Elevated Temperature Tension Tests of Metallic Materials |
Test load : Max. 100 kN Elongration/Reduction of Area (1 ~ 80) % Temperature : Max. 1 000 ℃ |
소재지 |
| ASTM E562-19e1 |
Standard Test Method for Determining Volume Fraction by Systematic Manual Point Count |
- |
소재지 |
| ASTM E92-23 |
Standard Test Methods for Vickers Hardness and Knoop Hardness of Metallic Materials |
HV 10 |
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| ASTM A262-15 (Reapproved 2021) |
Standard Practices for Detecting Susceptibility to Intergranular Attack in Austenitic Stainless Steels - PRACTICE A - PRACTICE B - PRACTICE C - PRACTICE E |
×50 ~ ×1 000 |
소재지 |
| ASTM A923-25 |
Standard Test Methods for Detecting Detrimental Intermetallic Phase in Duplex Austenitic/Ferritic Stainless Steels |
TEST METHOD B Absorbed energy : (0 ~ 400) J Temperature : Room Temp. ~ -196 ℃ Lateral Expansion : (0.01 ~ 10) mm Percent Shear fracture area : Max. 100 % |
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| ASTM E45-25 |
Standard Test Methods for Determining the Inclusion Content of Steel 12. Method A (Worst Fields) |
- |
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| ASTM G28-24 |
Standard Test Methods for Detecting Susceptibility to Intergranular Corrosion in Wrought, Nickel-Rich, Chromium-Bearing Alloys METHOD A—Ferric Sulfate—Sulfuric Acid Test |
- |
소재지 |
| ASTM G48-25 |
Standard Test Methods for Pitting and Crevice Corrosion Resistance of Stainless Steels and Related Alloys by Use of Ferric Chloride Solution 8. Method A—Ferric Chloride Pitting Test |
- |
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| ISO 3651-2:1998 |
Determination of resistance to intergranular corrosion of stainless steels Part 2:Ferritic, austenitic and ferritic-austenitic(duplex) stainless steels - Corrosion test in media containing sulfuric acid |
- |
소재지 |
| ISO 6506-1:2014 |
Metallic materials - Brinell hardness test - Part 1: Test method |
(4 903 ~ 29 420) N |
소재지 |
| ISO 6508-1:2023 |
Metallic materials - Rockwell hardness test - Part 1:Test method |
HRB, HRC |
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| ▶ 철강 |
| KS D 1652:2022 |
철 및 강의 스파크 방전 원자 방출 분광 분석 방법 |
C : (0.007 ~ 0.93) % Si : (0.004 ~ 1.1) % Mn : (0.06 ~ 1.77) % P : (0.004 5 ~ 0.048) % S : (0.000 3 ~ 0.05) % Cr : (0.005 5 ~ 25) % Ni : (0.01 ~ 20) % Mo : (0.004 ~ 3) % Cu : (0.009 ~ 0.42) % V : (0.001 ~ 0.49) % Ti : (0.000 5 ~ 0.34) % Al : (0.003 ~ 0.16) % Nb : (0.006 ~ 0.65) % Pb : (0.001 ~ 0.018 )% Sn : (0.001 ~ 0.016) % W : (0.01 ~ 0.08) % Zr : (0.001 ~ 0.069) % B : (0.001 5 ~ 0.011) % Sb : (0.008 ~ 0.034) % Co : (0.004 2 ~ 0.22) % As : (0.001 ~ 0.05) % |
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| ASTM E415-21 |
Standard Test Method for Analysis of Carbon and Low-Alloy Steel by Spark Atomic Emission Spectrometry |
C : (0.02 ~ 0.93) % Si : (0.02 ~ 1.12) % Mn : (0.06 ~ 1.77) % P : (0.006 ~ 0.048) % S : (0.001 ~ 0.055) % Cr : (0.007 ~ 8.14) % Ni : (0.01 ~ 4.13) % Mo : (0.007 ~ 1.3) % Cu : (0.009 ~ 0.42) % V : (0.003 ~ 0.3) % Ti : (0.001 ~ 0.2) % Al : (0.006 ~ 0.093) % Nb : (0.006 ~ 0.12) % Sn : (0.005 ~ 0.016) % Zr : (0.01 ~ 0.05) % B : (0.001 5 ~ 0.007) % Co : (0.006 ~ 0.15) % Sb : (0.006 ~ 0.027) % As : (0.003 ~ 0.055) % |
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